Zhu Yuan, Yang Tian-Xiao, Qi Ben-Kun, Li Hang, Zhao Qing-Sheng, Zhao Bing
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China; University of Chinese Academy of Sciences, Beijing 100049, China.
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China; Department of Biomedicine, Beijing City University, Beijing 100094, PR China.
Int J Biol Macromol. 2023 May 1;236:123977. doi: 10.1016/j.ijbiomac.2023.123977. Epub 2023 Mar 10.
Deep eutectic solvents (DESs) have been extensively applied to pretreat lignocellulose; however, comparative research on acidic and alkaline DES pretreatment is relatively lacking. Herein, pretreatment of grapevine agricultural by-products with seven DESs were compared in terms of removal of lignin and hemicellulose and component analysis of the pretreated residues. Among the tested DESs, both acidic choline chloride-lactic (CHCl-LA), and alkaline potassium carbonate-ethylene glycol (KCO-EG) were effective in delignification. Thereafter, the CHCl-LA and KCO-EG extracted lignin was compared by analyzing their physicochemical structure changes and antioxidant properties. The results showed that the thermal stability, molecular weight, and phenol hydroxyl percentage of CHCl-LA lignin were inferior to KCO-EG lignin. It was found that the high antioxidant activity of KCO-EG lignin was mainly attributed to the abundant phenol hydroxyl, guaiacyl (G), and para-hydroxy-phenyl (H). By comparing acidic and alkaline DES pretreatments and their lignin nuances in biorefining, novel insights are derived for the scheduling and selection of DES for lignocellulosic pretreatment.
低共熔溶剂(DESs)已被广泛应用于木质纤维素的预处理;然而,关于酸性和碱性DES预处理的比较研究相对较少。在此,对七种DESs预处理葡萄藤农业副产品在木质素和半纤维素去除以及预处理残渣成分分析方面进行了比较。在所测试的DESs中,酸性的氯化胆碱-乳酸(CHCl-LA)和碱性的碳酸钾-乙二醇(KCO-EG)在脱木质素方面均有效。此后,通过分析CHCl-LA和KCO-EG提取木质素的物理化学结构变化和抗氧化性能对其进行了比较。结果表明,CHCl-LA木质素的热稳定性、分子量和酚羟基百分比均低于KCO-EG木质素。发现KCO-EG木质素的高抗氧化活性主要归因于其丰富的酚羟基、愈创木基(G)和对羟基苯基(H)。通过比较酸性和碱性DES预处理及其在生物精炼中木质素的细微差别,为木质纤维素预处理中DES的选择和调度提供了新的见解。